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Multiaxial low-cycle fatigue life evaluation under different non-proportional loading paths

机译:不同比例载荷路径下的多轴低周疲劳寿命评估

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摘要

This paper presents analytical and experimental investigations for fatigue lives of structures under uniaxial, torsional, multiaxial proportional, and non-proportional loading conditions. It is known that the rotation of principal stress/strain axes and material additional hardening due to non-proportionality of cycle loading are the 2 main causes resulting in shorter fatigue lives compared with those under proportional loading. This paper treats these 2 causes as independent factors influencing multiaxial fatigue damage and proposes a new non-proportional influencing parameter to consider their combined effects on the fatigue lives of structures. A critical plane model for multiaxial fatigue lives prediction is also proposed by using the proposed non-proportional influencing factor to modify the Fatemi-Socie model. The comparison between experiment results and theoretical evaluation shows that the proposed model can effectively predict the fatigue life due to multiaxial non-proportional loading.
机译:本文介绍了在单轴,扭转,多轴比例和非比例载荷条件下结构疲劳寿命的分析和实验研究。众所周知,与按比例载荷相比,主应力/应变轴的旋转和由于循环载荷的不成比例引起的材料附加硬化是导致疲劳寿命缩短的两个主要原因。本文将这两个原因作为影响多轴疲劳损伤的独立因素,并提出了一个新的非比例影响参数,以考虑它们对结构疲劳寿命的综合影响。通过使用提出的非比例影响因素来修改Fatemi-Socie模型,还提出了用于预测多轴疲劳寿命的临界平面模型。实验结果与理论评价值的比较表明,该模型可以有效预测多轴非比例载荷引起的疲劳寿命。

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